Abstract

In the current study, an AlMg alloy refined with a nano-TiC/Ti grain refiner was successfully printed by cold metal transition wire arc additive manufacturing (CMT-WAAM). The effects of the nano-TiC/Ti grain refiner on the microstructure and mechanical properties of the CMT-WAAM-prepared AlMg alloy were studied. The results indicated that the nano-TiC/Ti grain refiner has a significant refining effect on AlMg alloy and refined the coarse columnar crystals into uniform fine equiaxed crystals. The average grain size of the CMT-WAAM AlMg alloy refined with the 0.6 wt% nano-TiC/Ti grain refiner decreased from 53.06 μm to 25.32 μm (yz plane), and the average grain size in the xy plane decreased from 52.00 μm to 25.80 μm. The excellent grain refinement effect of the nano-TiC/Ti grain refiner was attributed to the presence of TiC particles at the grain, which acted as heterogeneous nucleation sites and improved the nucleation rate. Moreover, TiC particles located at the grain boundary inhibited the growth of the grain boundary. The mechanical properties, i.e., the tensile and yield strength, were improved by 20–25%, and there was an increase in the microhardness (~9.5%) of the CMT-WAAM AlMg alloy refined with the 0.6 wt% nano-TiC/Ti grain refiner.

Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call